Area of research
Radiology, Nuclear Medicine and Imaging · Radiation
Research interest
Research interests include Medical Imaging Techniques and Applications, Radiation Detection and Scintillator Technologies, Advanced MRI Techniques and Applications, and Atomic and Subatomic Physics Research.
Imaging Simulation of a Dual-Panel PET Geometry With Ultrafast TOF Detectors
Exceptional brain PET images from the NeuroEXPLORER: scans with targeted radiopharmaceuticals and comparison to HRRT.
Mitochondrial Imaging Detects Early Cardiac Changes Following Cancer Immunotherapy.
Quantitative PET imaging and modeling of molecular blood-brain barrier permeability.
Total-Body Parametric Imaging Using Relative Patlak Plot.
Quantitative Accuracy Assessment of the NeuroEXPLORER for Diverse Imaging Applications: Moving Beyond Standard Evaluations.
Quantitative Total-Body Imaging of Blood Flow with High-Temporal-Resolution Early Dynamic <sup>18</sup>F-FDG PET Kinetic Modeling.
Total-body positron emission tomography: a tool for systemic, quantitative evaluation of the inflammatory burden of psoriatic arthritis.
Segmented SiPM Readout for Cherenkov Time-of-Flight Positron Emission Tomography Detectors Based on Bismuth Germanate.
A Time-Walk and Timing-Shift Correction Method for Dual-Ended Readout TOF-DOI PET Detectors.
Fully Automated Image-Based Multiplexing of Serial PET/CT Imaging for Facilitating Comprehensive Disease Phenotyping.
Dual-ended readout TOF-DOI PET detectors based on 3.2 mm and 1.6 mm pitch LYSO arrays.
A cutting-edge technology for the future of nuclear medicine.
Exploring Anti-Coincidence Technique for Scattering Contamination Rejection in a Simultaneous PET/SPECT Imaging System
Development and Initial Evaluation of 3D-printed High Resolution Brain Phantom for PET.
Sharing a whole-/total-body [18F]FDG-PET/CT dataset with CT-derived segmentations: an ENHANCE.PET initiative
Correction to: Feasibility of PET‑enabled dual‑energy CT imaging: First physical phantom and initial patient study results.
High spatial resolution PET detectors based on 10 mm × 10 mm linearly-graded SiPMs and 0.5 mm pitch LYSO arrays.
Feasibility of PET-enabled dual-energy CT imaging: First physical phantom and initial patient study results.
1072 Noninvasive detection of immunotherapy-related cardiac effects using [ <sup>1</sup> <sup>8</sup> F]F-AraG PET
Performance Characteristics of the NeuroEXPLORER, a Next-Generation Human Brain PET/CT Imager.
Dose Reduction in Pediatric Oncology Patients with Delayed Total-Body [<sup>18</sup>F]FDG PET/CT.
Total-Body Dynamic Imaging and Kinetic Modeling of [<sup>18</sup>F]F-AraG in Healthy Individuals and a Non-Small Cell Lung Cancer Patient Undergoing Anti-PD-1 Immunotherapy.
High-Temporal-Resolution Kinetic Modeling of Lung Tumors with Dual-Blood Input Function Using Total-Body Dynamic PET.
Practical Considerations for Total-Body PET Acquisition and Imaging.
Non-invasive quantification of <sup>18</sup>F-florbetaben with total-body EXPLORER PET.
PET Detectors Based on Multi-Resolution SiPM Arrays.
Development of a Monte Carlo-based scatter correction method for total-body PET using the uEXPLORER PET/CT scanner.
Optimization-derived blood input function using a kernel method and its evaluation with total-body PET for brain parametric imaging.
Super-resolution reconstruction of γ-ray CT images for PET-enabled dual-energy CT imaging.